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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Decoupled equations for reverse time migration in tilted transversely isotropic media
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Decoupled equations for reverse time migration in tilted transversely isotropic media

机译:倾斜的横观各向同性介质中逆时偏移的解耦方程

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摘要

Conventional modeling and migration for tilted transversely isotropic (TTI) media may suffer from numerical instabilities and shear wave artifacts due to the coupling of the P-wave and SV-wave modes in the TTI coupled equations. Starting with the separated P- and SV-phase velocity expressions for vertical transversely isotropic (VTI) media, we extend these decoupled equations for modeling and reverse time migration (RTM) in acoustic TTI media. Compared with the TTI coupled equations published in the geophysical literature, the new TTI decoupled equations provide a more stable solution due to the complete separation of the P-wave and SV-wave modes. The pseudospectral method is the most convenient method to implement these equations due to the form of wavenumber expressions and has the added benefit of being highly accurate and thus avoiding numerical dispersion. The rapid expansion method (REM) in time is employed to produce a broad band numerically stable time evolution of the wavefields. Synthetic results validate the proposed TTI decoupled equations and show that modeling and RTM in TTI media with the decoupled equations remain numerically stable even for models with strong anisotropy and sharp contrasts.
机译:倾斜横观各向同性(TTI)介质的常规建模和迁移可能会由于TTI耦合方程中P波和SV波模式的耦合而遭受数值不稳定性和剪切波伪影的困扰。从垂直横观各向同性(VTI)介质的分离的P相和SV相速度表达式开始,我们扩展了这些解耦方程,用于声学TTI介质中的建模和逆时偏移(RTM)。与地球物理文献中发表的TTI耦合方程相比,由于P波和SV波模式完全分离,新的TTI解耦方程提供了更稳定的解决方案。由于波数表达式的形式,伪谱方法是最便捷的方法来实现这些方程式,并且具有更高的准确性,即可以避免数值离散,因此具有附加优势。时间上的快速扩展方法(REM)用于产生波场的宽带数值稳定的时间演化。综合结果验证了所提出的TTI解耦方程,并表明,即使对于各向异性强且对比度强的模型,具有解耦方程的TTI介质中的建模和RTM仍保持数值稳定。

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